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F R Maxfield

Publications and source records attributed to F R Maxfield.

At least 127 records · Page 7Linked to original sources

Rapid acidification of endocytic vesicles containing asialoglycoprotein in cells of a human hepatoma line.

Acidification of endocytic vesicles has been implicated as a necessary step in various processes including receptor recycling, virus penetration, and the entry of diphtheria toxin into cells. However, there have been few accurate pH measurements in morphologically and biochemically defined endocytic compartments. In this paper, we show that prelysosomal endocytic vesicles in HepG2 human hepatoma cells have an internal pH of approximately 5.4. (We previously reported that similar vesicles in mouse fibroblasts have a pH of 5.0.) The pH values were obtained from the fluorescence excitation profile after internalization of fluorescein labeled asialo-orosomucoid (ASOR). To make fluorescence measurements against the high autofluorescence background, we developed digital image analysis methods for estimating the pH within individual endocytic vesicles or lysosomes. Ultrastructural localization with colloidal gold ASOR demonstrated that the pH measurements were made when ligand was in tubulovesicular structures lacking acid phosphatase activity. Biochemical studies with 125I-ASOR demonstrated that acidification precedes degradation by more than 30 min at 37 degrees C. At 23 degrees C ligand degradation ceases almost entirely, but endocytic vesicle acidification and receptor recycling continue. These results demonstrate that acidification of endocytic vesicles, which causes ligand dissociation, occurs without fusion of endocytic vesicles with lysosomes. Methylamine and monensin raise the pH of endocytic vesicles and cause a ligand-independent loss of receptors. The effects on endocytic vesicle pH are rapidly reversible upon removal of the perturbant, but the effects on cell surface receptors are slowly reversible with methylamine and essentially irreversible with monensin. This suggests that monensin can block receptor recycling at a highly sensitive step beyond the acidification of endocytic vesicles. Taken together with other direct and indirect estimates of endocytic vesicle pH, these studies indicate that endocytic vesicles in many cell types rapidly acidify below pH 5.5, a pH sufficiently acidic to allow receptor-ligand dissociation and the penetration of some toxin chains and enveloped virus nucleocapsids into the cytoplasm.

Asialoglycoproteins↗

Microinjection of Ca++-calmodulin causes a localized depolymerization of microtubules.

The microinjection of calcium-saturated calmodulin into living fibroblasts causes the rapid disruption of microtubules and stress fibers in a sharply delimited region concentric with the injection site. This effect is specific to the calcium-bearing form of calmodulin; neither calcium-free calmodulin nor calcium ion at similar levels affects the cytoskeleton. If cells have previously been microinjected with calcium-free calmodulin, elevation of their intracellular calcium levels to 25 mM potentiates the disruption of microtubules throughout the cytoplasm. Approximately 400 mM free calcium is required to cause an equivalent disruption in uninjected cells. The level of calmodulin necessary to disrupt the full complement of cellular microtubules is found to be approximately in 2:1 molar ratio to tubulin dimer. These results indicate that calmodulin can be localized within the cytoplasm in a calcium-dependent manner and that it can act to regulate the calcium lability of microtubules at molar ratios that could be achieved locally within the cell. Our results are consistent with the hypothesis that calmodulin may be controlling microtubule polymerization equilibria in areas of high local concentration such as the mitotic spindle.

Animals↗

Rapid acidification of endocytic vesicles containing alpha 2-macroglobulin.

We have used fluorescein-labeled alpha 2-macroglobulin (F-alpha 2M) to measure pH changes in the microenvironment of internalized ligands following receptor-mediated endocytosis. Fluorescence intensities of single BALB/c 3T3 mouse fibroblasts were measured by using a microscope spectrofluorometer with narrow bandpass excitation filters. The pH was determined from the ratio of fluorescein fluorescence intensities with 450 nm and 490 nm excitation. A standard pH curve was obtained by incubating cells with F-alpha 2M for 30 min at 37 degrees C followed by fixation and incubation in buffers of varying pH. To measure the pH of endocytic vesicles, cells were incubated with F-alpha 2M for 15 min at 37 degrees C. Fluorescence intensities were measured on living cells within 5 min of rinsing. Under these conditions, the pH of the F-alpha 2M microenvironment was 5.0 +/- 0.2. Using colloidal gold-alpha 2M for electron microscopic localizations we have verified that, under these conditions, alpha 2M is predominantly in uncoated vesicles that are negative for acid phosphatase activity. With further incubation for 1/2 hr, we obtained a pH of 5.0 +/- 0.2 for the F-alpha 2M. Using fluorescein dextran, we obtained a lysosomal pH of 4.6 +/- 0.2. These results indicate that endocytic vesicles become acidic prior to fusion with lysosomes.

Acid Phosphatase↗

Receptor-mediated endocytosis of diphtheria toxin by cells in culture.

The binding and uptake of fluorescently labeled diphtheria toxin by cells in culture has been examined by using epifluorescence video intensification microscopy. Rhodamine-labeled diphtheria toxin retained significant toxicity on bioassay and in cell culture and was tested for uptake by human WI-38 and mouse 3T3 fibroblasts grown in culture. When added to cells at 37 degrees C, toxin was observed to become concentrated and internalized in discrete vesicles in both cell lines. The appearance of fluorescent clusters could be prevented by addition of excess unlabeled diphtheria toxin to the medium or by addition of ATP (which has been shown to block toxin binding to cells), indicating that the rhodamine-labeled toxin was binding to diphtheria toxin-specific cell surface binding sites. When the simultaneous uptake of rhodamine-labeled diphtheria toxin and fluorescein-labeled alpha 2-macroglobulin was monitored, the two proteins appeared in the same clusters indicating that the toxin undergoes receptor-mediated endocytosis. Despite the difference in susceptibility to diphtheria toxin of cells derived from sensitive (human) and resistant (mouse) tissues, the behavior of the rhodamine-labeled derivative in both cell lines was indistinguishable in terms of toxin required for formation of clusters or inhibition by unlabeled toxin or by ATP. These results demonstrate that diphtheria toxin-specific cell surface binding sites occur on both insensitive and sensitive cells and suggest that toxin is processed similarly by both cell types during its initial cell surface binding and internalization by this pathway. The possible involvement of this uptake system in the mechanism of action of diphtheria toxin in cells is discussed.

Animals↗

Weak bases and ionophores rapidly and reversibly raise the pH of endocytic vesicles in cultured mouse fibroblasts.

It has been shown that endocytic vesicles in BALB/c 3T3 cells have a pH of 5.0 (Tycko and Maxfield, Cell, 28:643-651). In this paper, a method for measuring the effect of various agents, including weak bases and ionophores, on the pH of endocytic vesicles is presented. The method is based on the increase in fluorescein fluorescence with 490-nm excitation as the pH is raised above 5.0. Intensities of cells were measured using a microscope spectrofluorometer after internalization of fluorescein-labeled alpha 2-macroglobulin by receptor-mediated endocytosis. The increase in endocytic vesicle pH was determined from the increase in fluorescence after addition of various concentrations of the test agents. The following agents increased endocytic vesicle pH above 6.0 at the indicated concentrations: monensin (6 microM), FCCP (10 microM), chloroquine (140 microM), ammonia (5 mM), methylamine (10 mM). The ability of many of these agents to raise endocytic vesicle pH may account for many of their effects on receptor-mediated endocytosis. Dansylcadaverine caused no effect on vesicle pH at 1 mM. The observed increases in vesicle pH were rapid (1-2 min) and could be reversed by removal of the perturbant. This reversibility indicates that the vesicles themselves contain a mechanism for acidification. The increase in vesicle pH due to these treatments can be observed visually using an SIT video camera. Using this method, it is shown that endocytic vesicles become acidic at very early times (i.e., within 5-7 min of continuous uptake at 37 degrees C).

Ammonia↗

Binding, surface mobility, internalization, and degradation of rhodamine-labeled alpha 2-macroglobulin.

We have used quantitative fluorescence methods to examine the fate of rhodamine-labeled alpha 2-macroglobulin (R-alpha 2 M) after binding to cell-surface receptors on NRK and Swiss 3T3 cells. From measurements of fluorescence intensities in NRK cells fixed after incubation with R-alpha 2M, we found that uptake was saturable and that half-maximal uptake occurred at 130 nM R-alpha 2M. Fluorescence measurements on cell extracts of NRK and Swiss 3T3 cells also showed a half-maximal uptake of R-alpha 2M near 130 nM. We estimate that NRK cells can take up 10(6) molecules of R-alpha 2M per hour via receptor-mediated endocytosis. The mobility of alpha 2-macroglobulin receptors on the surface of Swiss 3T3 cells was measured by using fluorescence photobleaching recovery. The two-dimensional effective diffusion coefficient of R-alpha 2M receptors was approximately 8 X 10(-10) cm2 s-1, a value close to that previously obtained for insulin and epidermal growth factor receptors. Degradation of R-alpha 2M by the cells was followed by using the loss of fluorescence from the 185000-dalton band in sodium dodecyl sulfate--polyacrylamide gels. Rhodamine fluorescence was detected in the gels by using a microscope fluorescence spectrophotometer. NRK cells degraded alpha 2M to low molecular weight fragments with a t 1/2 of 15 min. Swiss 3T3 cells degraded about 75% of the alpha 2M with a t 1/2 of 1 h. The remaining 25% remained as the intact 185000-dalton peptide after 24 h. No significant accumulation of large breakdown products was observed in Swiss 3T3 or NRK cells.

Animals↗

Binding and mobility of the cell surface receptors for 3,3',5-triiodo-L-thyronine.

A fluorescent derivative of the thyroid hormone 3,3'-triiodo-L-thyronine binds to cultured mouse fibroblasts; such binding is saturable. Video intensification fluorescence microscopy indicates that binding occurs at the plasma membrane. Diffusion coefficients, obtained by fluorescence photobleaching recovery, are consistent with binding to a protein receptor on the cell surface.

Animals↗

Spectroscopic study of the conformations of proline-containing oligopeptides in the crystalline state and in solution.

A conformational study has been carried out on a series of linear proline-containing oligopeptides (ZGP, ZGPL, ZGPLG and ZGPLGP) in both the crystalline state and in DMSO-d6 solution, using Raman and n.m.r. spectroscopy. The amide I and III bands in the Raman spectra of the crystalline forms indicate the presence of the type I beta-bend conformation in ZGPLG and ZGPLGP, but not in ZGP and ZGPL. This result is in agreement with X-ray data on these molecules. The Raman spectra of these peptides in solution indicate that more than one conformation is present, i.e. that the beta-bend structure of the solid form of ZGPLG and ZGPLGP is destabilized by DMSO-d6. 13C and 1H n.m.r. data also demonstrate the presence of more than one conformation in ZGP, ZGPL, ZGPLG and ZGPLGP in DMSO-d6 solution. These isomers differ in their conformation (cis and trans) about their Gly-Pro peptide bonds and possibly about the c alpha-C' bond of the C-terminal proline in ZGPLGP. For ZGP, ZGPL, ZGPLG and ZGPLGP, the ensemble of conformations in DMSO-d6 includes C5 and C7 hydrogen-bonded rings; in addition, ZGPLGP may contain a small percentage of a beta-bend conformation (at Pro2-Leu3) with trans peptides in both Gly-Pro moieties.

Crystallization↗

Dansylcadaverine inhibits internalization of 125I-epidermal growth factor in BALB 3T3 cells.

The binding and internalization of 125I-epidermal growth factor (125I-EGF) was studied in cultures of BALB 3T3 cells using a novel method that involved removal of cell-surface hormone by treatment with acetic acid under conditions that did not remove internalized hormone. In control cultures, 125I-EGF initially bound to its receptor on the plasma membrane and then was rapidly internalized. After 30 min, only 15% of the cell-bound hormone remained on the surface. In contrast, cultures treated with dansylcadaverine retained 82% of the cell-bound hormone on the cell surface. We propose that dansylcadaverine inhibits EGF internalization by preventing it from clustering in clathrin-coated pits.

Animals↗

Receptor-mediated uptake of 3,3',5-triiodo-L-thyronine by cultured fibroblasts.

Using video intensification fluorescence microscopy and tetramethylrhodamine (Rho)-labeled 3,3',5-triiodo-L-thyronine (T3), we studied the uptake of T3 by cultured mouse fibroblasts. After incubation of cells with Rho-T3 for 30 min at 37 degrees C the fluorescent hormone was concentrated in many small bright accumulations. With a 1000-fold excess of unlabeled T3, only weak background fluorescence was seen. Furthermore, when cells were incubated with Rho or Rho-thyronine only background fluorescence was detected. These results indicate that the cellular uptake of Rho-T3 occurred through a T3-specific receptor-mediated process. Most of these accumulations underwent saltatory motion in living cells, indicating that the T3 was contained within endocytic vesicles. When cultured cells were incubated with Rho-T3 for 60 min at 4 degrees C, only diffuse fluorescence was observed, Rho-T3 became concentrated in vesicles upon warming of the cells to either 23 degrees C or 37 degrees C. Simultaneous incubation of cells with fluorescein-labeled alpha 2-macroglobulin and Rho-T3 showed that Rho-T3 was internalized in the same vesicles as alpha 2-macroglobulin. Furthermore, as previously reported for alpha 2-macroglobulin in the presence of methylamine, dansylcadaverine, or bacitracin, clustering and internalization were inhibited but the overall fluorescence intensity of the cells did not appear to be affected. Because it has been previously shown that receptor-mediated endocytosis of alpha 2-macroglobulin occurs through clustering of ligands in coated pits on the cell surface, these results indicate that Rho-T3 follows the same pathway. Thus it has now been demonstrated that a low-molecular weight hormone enters cells by this pathway.

Animals↗

Study of the state of ionization of [Leu5]-enkephalin in the crystal and in solution.

The state of ionization of [Leu5]-enkephalin in the crystal and in solution was studied with the aid of Raman, i.r., and n.m.r. techniques. The results indicate that, in the crystal, enkephalin adopts the dipolar ion form. In water near neutral pH, enkephalin also exists in the dipolar ion form whereas in DMSO-d6 it is a mixture of the dipolar ion and uncharged species. The pK's of alpha-amino and alpha-carboxyl groups are probably closer to each other in DMSO than in H2O.

Crystallization↗

Receptor-mediated endocytosis of alpha 2-macroglobulin in cultured fibroblasts.

Alpha 2-macroglobulin is internalized into cultured fibroblasts by receptor-mediated endocytosis. This ligand binds initially to diffusely distributed receptors on the cell surface which cluster rapidly into bristle-coated pits. Within a few minutes at 37 degrees C, these complexes are internalized into uncoated cytoplasmic vesicles, called receptosomes, which move about in the cell by saltatory motion. These vesicles interact with the Golgi-endoplasmic reticulum-lysosome system in the cell to deliver the ligand to newly formed lysosomes within 30--60 min.

Animals↗

Conformational study of [Leu5]-enkephalin by laser Raman spectroscopy.

The Raman spectrum of [Leu5]-enkephalin in the solid state indicates the presence of a type I' beta bend, in agreement with X-ray data of Smith & Griffin (1978). In solution, this molecule takes on different conformations in different solvents. In DMSO-d6, it forms a beta-bend structure whereas in water it exists as an ensemble of conformations.

Dimethyl Sulfoxide↗

Epidermal growth factor stimulation of DNA synthesis is potentiated by compounds that inhibit its clustering in coated pits.

We have used inhibitors of receptor-mediated endocytosis to investigate the mechanism and function of epidermal growth factor uptake by cultured cells. When rhodamine-labeled epidermal growth factor is bound to cell surface receptors on confluent monolayers of BALB/c 3T3 cells, it rapidly collects in cell surface clusters and is internalized. The clustering of occupied receptors requires Ca(2+) and is inhibited by primary alkylamines; both of these properties are shared by the enzyme transglutaminase (R-glutaminyl-peptide:amine gamma-glutamyl-yltransferase, EC 2.3.2.13). In Chinese hamster ovary cell extracts, methylamine inhibits 25-50% of the transglutaminase activity with a K(i) of 0.2 mM, and it inhibits the remaining transglutaminase activity with a K(i) of 20 mM. Clustering is almost completely inhibited by 10 mM methylamine. The polypeptide antibiotic bacitracin inhibits clustering of rhodamine-labeled epidermal growth factor or alpha(2)-macroglobulin at 0.7 mM, and it inhibits approximately 40% of the transglutaminase activity in Chinese hamster ovary cells with a K(i) of 0.03 mM. Fluorescent ligands bound to cell surface receptors in the presence of bacitracin form clusters within 30 min after bacitracin is removed from the culture medium. These results indicate that a transglutaminase-like enzyme may be required for the clustering and subsequent internalization of occupied receptors. The effects of 10 mM methylamine and 0.7 mM bacitracin on epidermal growth factor stimulation of DNA synthesis were examined. The stimulation of DNA synthesis by epidermal growth factor was increased 2- to 7-fold in the presence of methylamine or bacitracin. Alone, methylamine or bacitracin increased DNA synthesis 1.1- to 3-fold. The stimulation of DNA synthesis resulting from the simultaneous presence of the hormone and the clustering inhibitor was always greater than the sum of the stimulations produced by the hormone and the clustering inhibitors alone. The potentiation of epidermal growth factor activity by clustering inhibitors suggests that the hormone acts at the cell surface. We propose that rapid internalization of occupied receptors via coated pits may be a mechanism to limit the response to hormones.

Animals↗